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Second harmonic generation imaging microscopy with a high power ultrafast fiber laser

机译:高功率超快光纤激光器的二次谐波成像显微镜

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摘要

Second harmonic generation (SHG) imaging microscopy is an important emerging technique for biological research, with many advantages over existing one- or two-photon fluorescence techniques. SHG is of growing interest to those in the biomedical community studying structural proteins such as collagen and to those hi neuroscience using voltage-sensitive dyes. An important consideration in the application of non-linear phenomena such as SHG to routine microscopy is the complexity of the laser source used for excitation. Almost all applications in ultrafast microscopy currently employ mode-locked Ti:sapphire lasers, and though these systems have improved considerably in recent years, they are still expensive, large and complicated for those with skills outside of ultrafast optics. Here we report on SHG microscopy using a high power femtosecond fiber laser. The Femtopower1060 from Fianium Ltd. is an ultrafast fiber laser operating at 1064 nm. With a passively mode-locked master source, a high power fiber amplifier and a built-in pulse compressor, the laser produces high quality pulses shorter than 200 fs with a repetition rate of 100 MHz and an average power of 1 W. The unit is turn-key, air-cooled and maintenance free with a small footprint and proves to be an excellent source for SHG and two-photon microscopy at this wavelength outside the range of most Ti:sapphire systems and without those systems' complexity.
机译:二次谐波产生(SHG)成像显微镜是生物学研究中的一种重要新兴技术,与现有的单光子或双光子荧光技术相比具有许多优势。 SHG对于研究诸如胶原蛋白之类的结构蛋白的生物医学界以及使用电压敏感染料的神经科学领域的人们越来越感兴趣。在将诸如SHG的非线性现象应用于常规显微镜时,一个重要的考虑因素是用于激发的激光源的复杂性。目前,几乎所有超快显微镜应用都使用锁模Ti:蓝宝石激光器,尽管近年来这些系统已有很大改进,但对于那些拥有超快光学技术的人来说,它们仍然昂贵,庞大且复杂。在这里,我们报告使用高功率飞秒光纤激光器的SHG显微镜。 Fianium Ltd.的Femtopower1060是工作在1064 nm的超快光纤激光器。借助无源锁模主光源,高功率光纤放大器和内置脉冲压缩器,该激光器可产生短于200 fs的高质量脉冲,重复频率为100 MHz,平均功率为1W。交钥匙,风冷,免维护,占地面积小,并且在大多数Ti:蓝宝石系统范围之外的该波长下被证明是SHG和双光子显微镜的绝佳来源,并且没有这些系统的复杂性。

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